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首页> 外文期刊>Plant, Cell & Environment >Altered levels of LIL3 isoforms in Arabidopsis lead to disturbed pigment-protein assembly and chlorophyll synthesis, chlorotic phenotype and impaired photosynthetic performance
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Altered levels of LIL3 isoforms in Arabidopsis lead to disturbed pigment-protein assembly and chlorophyll synthesis, chlorotic phenotype and impaired photosynthetic performance

机译:拟南芥中LIL3同工型水平的改变导致色素-蛋白质组装和叶绿素合成,叶绿素表型和光合性能受损

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摘要

Light-harvesting complex (LHC)-like (LIL) proteins contain two transmembrane helices of which the first bears a chlorophyll (Chl)-binding motif. They are widespread in photosynthetic organisms, but almost nothing is known about their expression and physiological functions. We show that two LIL3 paralogues (LIL3:1 and LIL3:2) in Arabidopsis thaliana are expressed in photosynthetically active tissues and their expression is differentially influenced by light stress. Localization studies demonstrate that both isoforms are associated with subcomplexes of LHC antenna of photosystem II. Transgenic plants with reduced amounts of LIL3:1 exhibited a slightly impaired growth and have reduced Chl and carotenoid contents as compared to wild-type plants. Ectopic overexpression of either paralogue led to a developmentally regulated switch to co-suppression of both LIL3 isoforms, resulting in a circular chlorosis of the leaf rosettes. Chlorotic sectors show severely diminished levels of LIL3 isoforms and other proteins, and thylakoid morphology was changed. Additionally, the levels of enzymes involved in Chl biosynthesis are altered in lil3 mutant plants. Our data support a role of LIL3 paralogues in the regulation of Chl biosynthesis under light stress and under standard growth conditions as well as in a coordinated ligation of newly synthesized and/or rescued Chl molecules to their target apoproteins.
机译:采光复合(LHC)样(LIL)蛋白包含两个跨膜螺旋,其中第一个带有叶绿素(Chl)结合基序。它们广泛存在于光合生物中,但对其表达和生理功能几乎一无所知。我们显示,拟南芥中的两个LIL3旁系同源物(LIL3:1和LIL3:2)在光合活性组织中表达,它们的表达受光胁迫的影响不同。本地化研究表明,这两种同工型都与光系统II的LHC天线的亚复合物有关。与野生型植物相比,具有减少量的LIL3:1的转基因植物表现出稍微受损的生长并且具有降低的Chl和类胡萝卜素含量。任一个旁系同源物的异位过表达都导致了两种LIL3亚型共同抑制的发育调控开关,从而导致叶片玫瑰花环的环状萎黄。萎缩区显示LIL3亚型和其他蛋白质的水平大大降低,类囊体形态发生了变化。另外,在li13突变植物中,参与Ch1生物合成的酶的水平被改变。我们的数据支持LIL3旁系同源物在轻度胁迫和标准生长条件下调控Chl生物合成以及新合成和/或拯救的Chl分子与其目标载脂蛋白的协调连接中的作用。

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